| Literature DB >> 27429126 |
Naeimeh Jafari1, Rashik Ahmed1, Melanie Gloyd1, Jonathon Bloomfield1, Philip Britz-McKibbin1, Giuseppe Melacini1.
Abstract
Human serum albumin (HSA) serves not only as a physiological oncotic pressure regulator and a ligand carrier but also as a biomarker for pathologies ranging from ischemia to diabetes. Moreover, HSA is a biopharmaceutical with a growing repertoire of putative clinical applications from hypovolemia to Alzheimer's disease. A key determinant of the physiological, diagnostic, and therapeutic functions of HSA is the amount of long chain fatty acids (LCFAs) bound to HSA. Here, we propose to utilize (13)C-oleic acid for the NMR-based assessment of albumin-bound LCFA concentration (CONFA). (13)C-Oleic acid primes HSA for a LCFA-dependent allosteric transition that modulates the frequency separation between the two main (13)C NMR peaks of HSA-bound oleic acid (ΔνAB). On the basis of ΔνAB, the overall [(12)C-LCFA]Tot/[HSA]Tot ratio is reproducibly estimated in a manner that is only minimally sensitive to glycation, albumin concentration, or redox potential, unlike other methods to quantify HSA-bound LCFAs such as the albumin-cobalt binding assay.Entities:
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Year: 2016 PMID: 27429126 DOI: 10.1021/acs.jmedchem.6b00410
Source DB: PubMed Journal: J Med Chem ISSN: 0022-2623 Impact factor: 7.446